Literature DB >> 19001641

Matrix remodeling during intervertebral disc growth and degeneration detected by multichromatic FAST staining.

Victor Y L Leung1, Wilson C W Chan, Siu-Chun Hung, Kenneth M C Cheung, Danny Chan.   

Abstract

Various imaging techniques have been used to assess degeneration of the intervertebral disc, including many histological methods, but cartilage-oriented histological stains do not clearly show the comparatively complex structures of the disc. In addition, there is no integrated method to assess efficiently both the compartmental organization and matrix composition in disc samples. In this study, a novel histological method, termed FAST staining, has been developed to investigate disc growth and degeneration by sequential staining with fast green, Alcian blue, Safranin-O, and tartrazine to generate multichromatic histological profiles (FAST profiles). This identifies the major compartments of the vertebra-disc region, including the cartilaginous endplate and multiple zones of the annulus fibrosus, by specific FAST profile patterns. A disc degeneration model in rabbit established using a previously described puncture method showed gradual but profound alteration of the FAST profile during disc degeneration, supporting continual alteration of glycosaminoglycan. Changes of the FAST profile pattern in the nucleus pulposus and annulus fibrosus of the postnatal mouse spine suggested matrix remodeling activity during the growth of intervertebral discs. In summary, we developed an effective staining method capable of defining intervertebral disc compartments in detail and showing matrix remodeling events within the disc. The FAST staining method may be used to develop a histopathological grading system to evaluate disc degeneration or malformation.

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Year:  2008        PMID: 19001641      PMCID: PMC2664937          DOI: 10.1369/jhc.2008.952184

Source DB:  PubMed          Journal:  J Histochem Cytochem        ISSN: 0022-1554            Impact factor:   2.479


  23 in total

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Journal:  Spine (Phila Pa 1976)       Date:  2003-05-15       Impact factor: 3.468

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Authors:  Patrick Smits; Véronique Lefebvre
Journal:  Development       Date:  2003-03       Impact factor: 6.868

6.  Regional variations in the cellular matrix of the annulus fibrosus of the intervertebral disc.

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7.  Anabolic and catabolic mRNA levels of the intervertebral disc vary with the magnitude and frequency of in vivo dynamic compression.

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8.  Histochemical Demonstration of Alkaline Phosphatase in Decalcified Dental and Osseous Tissues.

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9.  Changes in nuclear composition following cyclic compression of the intervertebral disc in an in vivo rat-tail model.

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Journal:  Med Eng Phys       Date:  2004-09       Impact factor: 2.242

10.  Morphologic changes in annulus fibrosus during aging. An ultrastructural study in rats.

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  22 in total

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2.  Form and function of the intervertebral disc in health and disease: a morphological and stain comparison study.

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4.  Hypoxia-inducible factor (HIF)-1α and CCN2 form a regulatory circuit in hypoxic nucleus pulposus cells: CCN2 suppresses HIF-1α level and transcriptional activity.

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5.  The intravertebral distribution of bone density: correspondence to intervertebral disc health and implications for vertebral strength.

Authors:  A I Hussein; T M Jackman; S R Morgan; G D Barest; E F Morgan
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6.  Fibrin-genipin adhesive hydrogel for annulus fibrosus repair: performance evaluation with large animal organ culture, in situ biomechanics, and in vivo degradation tests.

Authors:  M Likhitpanichkul; M Dreischarf; S Illien-Junger; B A Walter; T Nukaga; R G Long; D Sakai; A C Hecht; J C Iatridis
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9.  Delivering mesenchymal stem cells in collagen microsphere carriers to rabbit degenerative disc: reduced risk of osteophyte formation.

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10.  Neonatal mouse intervertebral discs heal with restored function following herniation injury.

Authors:  Olivia M Torre; Rohit Das; Ramy E Berenblum; Alice H Huang; James C Iatridis
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